Electric machine with SMC stator core
A radial flux electric machine includes a rotor configured to rotate about an axis of rotation, a plurality of electromagnetic coils, and a stator. The stator may have an annular stator ring and a plurality of core tooth-portions extending in a radial direction. The annular stator ring and the plurality of core tooth-portions may be integrally formed of a Soft Magnetic Composite (SMC). The SMC may include one or more isotropic ferromagnetic materials, a magnetic saturation induction of greater than or equal to about 1.6 Tesla, and an electrical resistivity greater than 10 micro-ohm/m.
1. A radial flux electric machine, comprising:
a rotor configured to rotate about an axis of rotation;
a plurality of electromagnetic coils; and
a stator having an annular stator ring and a plurality of core tooth-portions symmetrically arranged on the annular stator ring about the axis of rotation to define a circumferential gap between adjacent core tooth-portions and extending in a radial direction, wherein the annular stator ring and the plurality of core tooth-portions are integrally formed of a Soft Magnetic Composite (SMC), and wherein the SMC includes one or more isotropic ferromagnetic materials, a magnetic saturation induction of greater than or equal to about 1.6 Tesla, and an electrical resistivity greater than 10 micro-ohm/m,
wherein the stator includes a plurality of multi-part teeth with each tooth of the plurality of multi-part teeth including one core tooth-portion of the plurality of core tooth-portions and at least one additional tooth-portion non-integrally formed with the one core tooth-portion, wherein a cross-section of each tooth of the plurality of multi-part teeth in a plane perpendicular to the axis of rotation has a trapezoidal shape, and wherein (a) the at least one additional tooth-portion is disposed on a circumferential gap adjacent to the one core tooth-portion, (b) a cross-section of the at least one additional tooth-portion along a plane perpendicular to the radial direction has a substantially rectangular shape, and (c) a cross-section of the at least one additional tooth-portion along the plane perpendicular to the axis of rotation has a substantially triangular shape.
2. The electric machine of claim 1 , wherein a pair of additional tooth-portions are disposed on circumferential gaps adjacent to the one core tooth-portion and arranged on opposite sides of the one core tooth-portion.
3. The electric machine of claim 1 , wherein, a cross-section of the one core tooth-portion along the plane perpendicular to the axis of rotation has a substantially rectangular shape or a substantially parallelogram shape.
4. The electric machine of claim 1 , wherein, a cross-section of the one core tooth-portion along the plane perpendicular to the radial direction has a substantially rectangular shape.
5. The electric machine of claim 1 , wherein a cross-section of each tooth of the plurality of multi-part teeth in a plane perpendicular to the radial direction has a substantially rectangular shape, and a perimeter of the cross-section is substantially a constant in the radial direction, and an area of the cross-section varies in the radial direction.
6. The electric machine of claim 5 , wherein the rotor is disposed radially outwards of the stator to form an air gap between the rotor and the stator, and the area of the cross-section increases in the radial direction toward the air gap.
7. The electric machine of claim 1 , wherein, each tooth of the plurality of multi-part teeth defines external surfaces having two sets of opposing faces, the opposing faces of each set of the two sets being non-parallel to each other, and adjacent side faces of adjacent teeth being parallel to each other.
8. The electric machine of claim 7 , wherein each face of the two sets of opposing faces is inclined in a radial direction.
9. The electric machine of claim 8 , wherein the opposing faces of one set of opposing faces converge towards each other in a radially outward direction and the opposing faces of the other set of opposing faces diverge from each other in the radially outward direction.
10. The electric machine of claim 1 , wherein the at least one additional tooth-portions is formed of the SMC.
11. The electric machine of claim 1 , wherein at least one additional tooth-portion is formed of an isotropic material other than SMC.
12. The electric machine of claim 1 , wherein, the annular stator ring includes two mirror-symmetric bodies coupled together along a plane of symmetry perpendicular to the axis of rotation.
13. The electric machine of claim 12 , wherein, the two mirror-symmetric bodies are attached together along the plane of symmetry using an adhesive material, wherein a difference between coefficients of thermal expansion of the SMC and the adhesive material is less than about 20%.
14. The electric machine of claim 1 , wherein the magnetic saturation induction of the SMC is greater than or equal to about 2.4 Tesla.
15. The electric machine of claim 1 , wherein the magnetic saturation induction of the SMC is greater than or equal to about 2.5 Tesla.
16. The electric machine of claim 1 , wherein the resistivity of the SMC is greater than about 100 micro-ohm/m.
17. The electric machine of claim 1 , wherein the electric machine is an electric motor.
18. The electric machine of claim 1 , wherein the electric machine is an electric generator.